采用最小控制电路的多串LED驱动器软自换相方法

Junsik Kim, Jiyong Lee, S. Park
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引用次数: 36

摘要

发光二极管(led)由于具有高效、高可靠性、长寿命、环保等优点,在普通照明中得到了广泛的应用。最近,各种无转换器的非隔离LED驱动器与多个LED串串联的方法已经被引入,实现了更高的效率和功率因数(PF),以及更低的总谐波失真(THD)[1-3]。在多串LED驱动器中,由于低架空电压,随着LED串数的增加,效率和PF得到提高。然而,随着工作电压范围的减小,由于输入电压噪声和LED电压变化,使用输入电压传感方法很难找到合适的换相时间[4]。其他问题是由硬换流中高di/dt和dv/dt引起的EMI和EMC噪声。当LED电流较大时,硬换相的负面影响更大,所需的di/dt控制电路也更复杂[5]。为了在不增加板载EMI滤波器的情况下满足照明的EMI和EMC规定,软换相是必不可少的。为了克服这些问题,我们提出了一种使用源耦合对(SCP)和参考电压的软自换相方法。传统的控制电路需要适当的换相时间和软换相不再是必要的。所制得的6串LED驱动IC在22W/110V交流条件下能够实现高效率(92.2%)、高PF(0.996)和低THD(8.6%)。
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A soft self-commutating method using minimum control circuitry for multiple-string LED drivers
Light-emitting diodes (LEDs) are widely used in general lightings due to their several advantages including high efficiency, high reliability, long life, and environmental friendliness. Recently, various converter-free methods for non-isolated LED drivers with multiple LED strings connected in series have been introduced, enabling both a higher efficiency and power factor (PF) as well as lower total harmonic distortion (THD) [1-3]. In multiple-string LED drivers, the efficiency and PF are enhanced as the number of LED strings increases because of a low overhead voltage. However, as the operational voltage range decreases, it is difficult to find a proper commutation time using input voltage sensing approaches due to input voltage noise and LED voltage variation [4]. Other concerns are EMI and EMC noise caused by high di/dt and dv/dt in hard commutations. When the LED current is high, negative effects of hard commutation become worse and the required di/dt control circuits are more complicated [5]. To meet EMI and EMC regulations for lightings without adding on-board EMI filters, soft commutation is essential. In order to overcome these problems, we propose a soft self-commutating method using a Source-Coupled Pair (SCP) and reference voltages. The conventional control circuits required for an appropriate commutation time and soft commutation are no longer necessary. The fabricated 6-string LED driver IC is capable of achieving high efficiency (92.2%), high PF (0.996) and low THD (8.6%) under the 22W/110V AC condition.
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